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1.
长坡—铜坑锡多金属矿位于广西大厂锡多金属矿田的西矿带,层状矿体广泛发育,但由于缺乏直接的成矿年龄数据,其成因还存在较大争议。利用锡石原位LA-MC-ICP-MS U-Pb法对采自92号层状矿体的三个锡石样品进行年代学研究,获得n(206Pb)/n(207Pb)—n(238U)/n(207Pb)等时线年龄为95.8±2.6 Ma(MSWD=6.3),与通过石英40Ar/39Ar法、透长石的激光原位40Ar/39Ar法及石英Rb-Sr等时线法获得的年龄(91.4±2.9~94.52±0.33)Ma在误差范围内一致,说明通过锡石原位LA-MC-ICP-MS U-Pb法定年在该类型矿床的年代学研究行之有效。同时,通过年代学佐证了锡的成矿与龙箱盖岩体第二阶段侵位(96.6~93.86 Ma)为同一时期,认为成矿与岩浆作用关系密切。  相似文献   

2.
王松山  桑海清  裘冀 《地质论评》1997,43(3):303-309
H_s型恩施球粒陨石K-Ar年龄为4503±91Ma,~(40)Ar-~(39)Ar坪年龄为4518±8Ma,总气体年龄为4515±23Ma,等时线年龄为4505±16Ma,年龄的一致性表明该陨石未经受过明显的热扰动,它是我国首次发现的Ar保存年龄高达45亿年以上的陨石。陨石形成早期有过短期的快速冷却。陨石母体在4.66±0.04Ma时破裂。恩施球粒陨石原始捕获(~(40)Ar/~(36)Ar)_t为0.89±0.44,推测4.5Ga前太阳风中~(40)Ar/~(36)Ar近于l。  相似文献   

3.
用~(40)oAr/~(39)Ar法测定了四川西部雀儿山地区的两个样品(黑云母和角闪石)。测定结果,黑云母的坪年龄为247.2±0.3Ma;等时线年龄为245.8±0.3Ma;热事件年龄为86.7Ma。角闪石的坪年龄为157.6±0.2Ma;热事件年龄为38.8Ma。  相似文献   

4.
近年的研究表明,中国东部东海地区的超高压变质岩在折返过程中,经历了两期构造变形。早期的韧性变形发生在角闪岩相变质作用条件下,晚期的脆韧性变形发生在绿片岩相变质作用条件下。两期构造变形的运动矢量都表现为上盘向南东的运动。对被超高压变质岩构造掩覆的海州磷矿角闪岩相白云斜长片岩中白云母~(40)Ar/~(39)Ar定年,获得的218.0±2.9 Ma的坪年龄和219.8 Ma的等时线年龄,表明早期的角闪岩相变质变形事件发生在约220 Ma。对在第二期构造变形滑脱面上定向生长的角闪石~(40)Ar/~(39)Ar定年,获得了坪年龄为213.1±0.3 Ma,等时线年龄为213.4±4.1Ma,表明了晚期变形事件的可能时代;对在滑脱面附近生长的伟晶黑云母和伟晶钾长石的~(40)Ar/~(39)Ar定年,获得了黑云母的坪年龄为203.4±0.3 Ma和203.6±0.4 Ma,等时线年龄为204.0±2.0 Ma和200.6±3.1Ma;伟晶钾长石的坪年龄为204.8±2.2 Ma,等时线年龄为204.0±5.0 Ma,表明该区这些岩石直到侏罗纪初才冷却到黑云母和钾长石的K-Ar同位素体系的封闭温度。结合前人关于该区超高压变质作用发生在240Ma的年代学资料,推测该区超高压变质岩在240 Ma到220 Ma期间以3~4 km/Ma的折返速率从地幔(地表以下约80~100 km深处)折返到地壳中下部(约20~30 km深处),220 Ma到213  相似文献   

5.
采用真空击碎技术提取东川汤丹铜矿床石英流体包裹体,进行40Ar-39Ar法年龄测定,获得了逐渐下降的阶梯形年龄谱,表明流体包裹体含有过剩氩;数据点在40Ar/36Ar-39Ar/36Ar图解上构成等时线,年龄为712±33Ma,这一年龄值代表了矿床的形成年龄[1]。随后对其粉末进行40Ar/39Ar阶段加热(100-800℃)分析,形成相对比较平坦的年龄谱,坪年龄为317±6Ma(39Ar占45%,含真空击碎分析在内),全部加热分析数据点构成的等时线年龄为321±13Ma,这一年龄初步解释为流体包裹体内子  相似文献   

6.
邱华宁  孙大中 《地球化学》1998,27(4):335-343
采用真空击碎技术提取东川汤丹铜矿床石英流体包裹体进行40Ar-39Ar法年龄测定,获得了逐渐下降的阶梯形年龄谱,表明流体包裹体含有过剩氩;数据点在40Ar/36Ar-39Ar/36Ar图解上构成等时线,等时线年龄为(712±33)Ma,代表了矿床的形成年龄。随后对其粉末进行40Ar-39Ar阶段加热(100—800℃)分析,形成相对比较平坦的年龄谱,坪年龄为(317±6)Ma(39Ar占45%,含真空击碎分析在内),粉末加热分析全部数据点构成的等时线年龄为(321±13)Ma。电子探针分析和显微镜观察证实了该石英样品中含有粒径大于100μm,K2O含量为8%-10%,形成时间明显晚于石英的白云母类富钾矿物,粉末阶段加热分析结果表明~320Ma应为后期白云母类矿物的年龄。  相似文献   

7.
用快中子活化法测定了安徽凤阳和张八岭地区朱顶、毛山和上成3个金矿床第一阶段晚期和第二阶段的含金石英脉,石英的阶段加热40Ar/39Ar坪年龄值域为(116.1±0.6~118.3±0.5)Ma,分别与其最小视年龄和等时线年龄接近.坪年龄、最小视年龄和等时线年龄3种年龄值域为(113.4±0.4~118.3±0.5)Ma,可以作为石英的形成年龄域. 根据含金石英脉和围岩的空间关系,该年龄值域作为石英脉金矿的形成年龄是合理可靠的.金矿床形成于早白垩世阿普特期,与此时郯庐断裂带略带右行走滑正断层活动一致.  相似文献   

8.
东川播卡-拖布卡地区金矿是云南中部"康滇地轴"中、新元古界昆阳群岩石中发现的第一个金矿,位于接近三江褶皱带的扬子地块西缘.原生金矿化为含金黄铁矿石英脉、细脉、网脉和浸染状石英黄铁矿.四个不同产状的典型含金石英脉的石英的阶段加热40Ar/39Ar年龄谱为马鞍形,坪年龄值范围为59.93±0.21~42.38±0.32 Ma,最小视年龄范围59.30±4.30~41.90±1.8 Ma,与计算坪年龄加热阶段相应数据的40Ar-39Ar等时线年龄范围59.34±0.17~41.25±0.10 Ma,三者基本一致.等时线年龄计算的相关系数大于0.998,40Ar/3 6Ar初始值范围为293.17±1.40~295.2±0.43,与尼尔值一致.石英形成后没有受到后期地质作用.石英样品的坪年龄没有受到过剩氩和氩丢失的影响,可以作为石英和金矿的年龄.金矿形成于新生代第三纪古新世和始新世初的陆内拉张地质构造环境中.  相似文献   

9.
周涛发  袁峰  张鑫  岳书仓 《地质论评》2003,49(2):212-216
长江中下游成矿带中安庆铜牛井热液(充填)脉型铜、钼、金矿床主成矿阶段的石英样品的40Ar-39Ar快中子活化法坪年龄为134.77±0.70Ma,对应的等时线年龄为130.92±0.76Ma,最小视年龄为133.10±1.87Ma,三个年龄值在误差范围内十分接近,以等时线年龄(130.92±0.76Ma)代表石英的形成年龄.铜牛井热液脉型矿床与同一矿田中夕卡岩型矿床的形成时代相近,成矿与岩浆作用密切相关,可能为一连续的过程.  相似文献   

10.
运用单颗粒锆石逐层蒸发法和角闪石40Ar/39Ar阶段加热法研究了河南洛宁太华岩群斜长角闪岩的同位素年龄.获得锆石207Pb/206Pb年龄为2675±2 Ma,角闪石40Ar/39Ar坪年龄和等时线年龄分别为2372.98±47.46 Ma和2349.10±46.98 Ma.锆石207Pb/206Pb年龄代表了斜长角闪岩原岩的形成时代,而角闪石40Ar/39Ar年龄则为其变质时代,与Sm-Nd等时线年龄(2351±103Ma)相一致.上述年龄数据表明河南洛宁地区太华岩群形成于新太古代,在古元古代遭受过一次角闪岩相变质作用.  相似文献   

11.
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414.  相似文献   

12.
13.
Calcite samples were extracted both from the rock matrix and the superficial coating of a karstified fault plane of an underground quarry, located in the eastern border of the Paris basin. The karstification is dated as Quaternary. Analysis of mechanical calcite twinning reveals that only the calcite matrix has also undergone a compression trending WNW that can be attributed to the Mio-Pliocene alpine collision. Both coating and matrix have undergone a strike-slip regime with σ1 roughly trending north–south, that could correspond to the regional present-day state of stress, a strike-slip compression rather trending NNW, modified by local phenomena. To cite this article: M. Rocher et al., C. R. Geoscience 335 (2003).  相似文献   

14.
正20141520 Bo Ying(Key Laboratory of Metallogeny and Mineral Assessment,MLR,Beijing 100037,China);Liu Chenglin Saline Spring Hydrochemical Characteristics and Indicators for Potassium Exploration in Southwestern and Northern Tarim Basin,Xinjiang(Acta Geoscientica Sinica,ISSN1006-3021,CN11-3474/P,34(5),2013,p.594-602,5 illus.,3 tables,28 refs.)  相似文献   

15.
正20141243Chen Ge(Hangzhou Research Institute of Petroleum Geology,PetroChina,Hangzhou 310023,China);Si Chunsong Study on Sedimentary Numerical Simulation Method of Fan Delta Sand Body(Journal of Geology,  相似文献   

16.
正20142599Chen Sanming(Guangxi Key Laboratory of Concealed Deposits Exploration,Guilin University of Technology,Guilin541004,China);He Yuzhou Block Model and Reserves Estimation of Panzhihua Iron Deposit Based on 3D Geological Modeling(Journal of Guilin University of Technology,ISSN1674-9057,CN45-1375/N,33(4),2013,p.610-615,9illus.,1table,15refs.)  相似文献   

17.
正20140594 Bai Daoyuan(Hunan Institute of Geology Survey,Changsha 410016,China);Zhong Xiang Faults in the Jingzhou Basin and Their Tectonic Settings(Geotectonica et Metallogenia,ISSN1001-1552,CN44-1595/P,37(2),2013,p.173-183,6illus.,59refs.)Key words:basin evolution,tectonic setting,South China In the Upper Paleozoic and Jurassic se-  相似文献   

18.
正20141912Cao Hui(State Key Laboratory for Continental Tectonics and Dynamics,Institute of Geology,Chinese Academy of Geological Sciences,Beijing 100037,China)Gravitational Collapse and Folding during Orogenesis:A Comparative Study of FIA Trends and Fold Axial Plane Traces(Geology in China,ISSN1000-3657,CN11-1167/P,40(6),2013,p.1818-1828,9illus.,35refs.,with  相似文献   

19.
PALEOZOOLOGY     
正20141609 Chen Guiying(College of Earth Sciences,Guilin University of Technology,Guilin 541004,China);Han Nairen New Materials of Stylophora from the Upper Cambrian of the Jingxi Area,Guangxi,South China(Acta Palaeontologica Sinica,ISSN0001-6616,CN32-1188Q,52(3),2013,p.288-293,2 illus.,12 refs.)Key words:Stylophora,Guangxi  相似文献   

20.
GEOPHYSICS     
正20140634 Cao Lingmin(Key Laboratory of Marine Geology and Environment,Institute of Oceanology,Chinese Academy of Sciences,Qingdao 266071,China);Xu Yi Finite Difference Tomography of the Crustal Velocity Structure in Tengchong,Yunnan Province(Chinese Journal of Geophysics,ISSN0001-5733,CN11-2074/P,56(4),2013,p.1159-1167,6illus.,35refs.,with English abstract)  相似文献   

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